首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >WEARABLE WIRELESS INERTIAL SENSORS FOR ESTIMATION OF GAIT PARAMETERS AND ITS INTEGRATION WITH PORTABLE HARNESS AMBULATORY SYSTEM FOR REHABILITATION
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WEARABLE WIRELESS INERTIAL SENSORS FOR ESTIMATION OF GAIT PARAMETERS AND ITS INTEGRATION WITH PORTABLE HARNESS AMBULATORY SYSTEM FOR REHABILITATION

机译:可穿戴无线惯性传感器,用于估计步态参数及其与康复的便携式线束外流系统集成

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There is a growing demand for quantifying the performance and efficacy of rehabilitation programs. Researchers are advocating home based rehabilitation devices and continuous monitoring of patients status in real time through wearable sensors. This paper investigates the use of inertial measurement sensors for recording the dynamic gait status. In order to facilitate long term recording and minimal interface of recording devices, these MEMS sensors are advantageous in many ways over the conventional laboratory methods. Portable Harness Ambulatory System (PHAS) can be effectively used in home environments with minimal assistance for gait rehabilitation. This paper addresses the stages of mechatronic integration of a prototype of PHAS with an aim for early gait rehabilitation of elderly and stroke survivors without fear of falling. Sensors modules comprised of accelerometer and gyroscope were developed. X-bee wireless communication protocol is used for transmitting the gait data for computer storage. Gait experiments with wireless sensor modules attached to shoulder, wrist, thigh and ankle joints of normal human subjects were conducted for slow and fast walking speed. The inertial measurement sensors provide information on the range of motion, gait speed, and orientation. Experimental results prove that sensor modules were successfully able to acquire and record the gait information wirelessly. These sensor modules can also be integrated in the PHAS prototype. The paper outlines the results of initial research and discusses possible alternatives.
机译:对量化康复计划的性能和功效越来越大。研究人员通过可穿戴传感器倡导家庭基础的康复设备,并实时地将患者身份实时监测。本文研究了使用惯性测量传感器来记录动态步态状态。为了促进记录装置的长期记录和最小界面,这些MEMS传感器在传统的实验室方法上的许多方式是有利的。便携式安全带动态系统(PHA)可以有效地用于家庭环境,具有最小的步态康复的帮助。本文解决了Phas原型的机制整合的阶段,目的是为了早期步态康复的老年人和卒中幸存者而不担心坠落。开发了由加速度计和陀螺仪组成的传感器模块。 X-BEE无线通信协议用于传输计算机存储的步态数据。使用连接到肩部,手腕,大腿和正常人体受试者的踝关节的无线传感器模块进行步态实验,用于缓慢和快速的行走速度。惯性测量传感器提供有关运动范围,步态速度和方向的信息。实验结果证明了传感器模块成功地能够无线获取和记录步态信息。这些传感器模块也可以集成在PHA原型中。本文概述了初始研究的结果,并讨论了可能的替代方案。

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